Files
libreoffice/pyuno/source/module/pyuno_module.cxx

857 lines
28 KiB
C++
Raw Normal View History

/* -*- Mode: C++; eval:(c-set-style "bsd"); tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*************************************************************************
*
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
*
* Copyright 2000, 2010 Oracle and/or its affiliates.
*
* OpenOffice.org - a multi-platform office productivity suite
*
* This file is part of OpenOffice.org.
*
* OpenOffice.org is free software: you can redistribute it and/or modify
* it under the terms of the GNU Lesser General Public License version 3
* only, as published by the Free Software Foundation.
*
* OpenOffice.org is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Lesser General Public License version 3 for more details
* (a copy is included in the LICENSE file that accompanied this code).
*
* You should have received a copy of the GNU Lesser General Public License
* version 3 along with OpenOffice.org. If not, see
* <http://www.openoffice.org/license.html>
* for a copy of the LGPLv3 License.
*
************************************************************************/
#include "pyuno_impl.hxx"
#include <boost/unordered_map.hpp>
#include <utility>
#include <osl/module.hxx>
#include <osl/thread.h>
#include <osl/file.hxx>
#include <typelib/typedescription.hxx>
#include <rtl/ustring.hxx>
#include <rtl/strbuf.hxx>
#include <rtl/ustrbuf.hxx>
#include <rtl/uuid.h>
#include <rtl/bootstrap.hxx>
#include <uno/current_context.hxx>
#include <cppuhelper/bootstrap.hxx>
#include <com/sun/star/reflection/XIdlReflection.hpp>
#include <com/sun/star/reflection/XIdlClass.hpp>
#include <com/sun/star/registry/InvalidRegistryException.hpp>
using osl::Module;
using rtl::OString;
using rtl::OUString;
using rtl::OUStringHash;
using rtl::OUStringToOString;
using rtl::OUStringBuffer;
using rtl::OStringBuffer;
using com::sun::star::uno::Sequence;
using com::sun::star::uno::Reference;
using com::sun::star::uno::XInterface;
using com::sun::star::uno::Any;
using com::sun::star::uno::makeAny;
using com::sun::star::uno::UNO_QUERY;
using com::sun::star::uno::RuntimeException;
using com::sun::star::uno::TypeDescription;
using com::sun::star::uno::XComponentContext;
using com::sun::star::container::NoSuchElementException;
using com::sun::star::reflection::XIdlReflection;
using com::sun::star::reflection::XIdlClass;
using com::sun::star::script::XInvocation2;
using namespace pyuno;
namespace {
/**
@ index of the next to be used member in the initializer list !
*/
2011-08-17 18:04:32 +02:00
// LEM TODO: export member names as keyword arguments in initialiser?
// Python supports very flexible variadic functions. By marking
// variables with one asterisk (e.g. *var) the given variable is
// defined to be a tuple of all the extra arguments. By marking
// variables with two asterisks (e.g. **var) the given variable is a
// dictionary of all extra keyword arguments; the keys are strings,
// which are the names that were used to identify the arguments. If
// they exist, these arguments must be the last one in the list.
class fillStructState
{
typedef boost::unordered_map <const OUString, bool, OUStringHash> initialised_t;
// Keyword arguments used
PyObject *used;
// Which structure members are initialised
boost::unordered_map <const OUString, bool, OUStringHash> initialised;
// How many positional arguments are consumed
// This is always the so-many first ones
sal_Int32 nPosConsumed;
// The total number of members set, either by a keyword argument or a positional argument
unsigned int nMembersSet;
public:
fillStructState()
: used (PyDict_New())
, initialised ()
, nPosConsumed (0)
, nMembersSet (0)
{
if ( ! used )
throw RuntimeException(OUString(RTL_CONSTASCII_USTRINGPARAM("pyuno._createUnoStructHelper failed to create new dictionary")), Reference< XInterface > ());
}
~fillStructState()
{
Py_DECREF(used);
}
void setUsed(PyObject *key)
{
PyDict_SetItem(used, key, Py_True);
}
bool isUsed(PyObject *key) const
{
return Py_True == PyDict_GetItem(used, key);
}
2011-08-21 11:18:13 +02:00
void setInitialised(OUString key, sal_Int32 pos = -1)
{
if (initialised[key])
{
OUStringBuffer buf;
buf.appendAscii( "pyuno._createUnoStructHelper: member '");
buf.append(key);
buf.appendAscii( "'");
if ( pos >= 0 )
{
buf.appendAscii( " at position ");
2011-08-21 11:18:13 +02:00
buf.append(pos);
}
buf.appendAscii( " initialised multiple times.");
throw RuntimeException(buf.makeStringAndClear(), Reference< XInterface > ());
}
initialised[key] = true;
++nMembersSet;
if ( pos >= 0 )
++nPosConsumed;
}
bool isInitialised(OUString key)
{
return initialised[key];
}
PyObject *getUsed() const
{
return used;
}
sal_Int32 getCntConsumed() const
{
return nPosConsumed;
}
int getCntMembersSet() const
{
return nMembersSet;
}
};
static void fillStruct(
const Reference< XInvocation2 > &inv,
typelib_CompoundTypeDescription *pCompType,
PyObject *initializer,
PyObject *kwinitializer,
fillStructState &state,
const Runtime &runtime) throw ( RuntimeException )
{
if( pCompType->pBaseTypeDescription )
fillStruct( inv, pCompType->pBaseTypeDescription, initializer, kwinitializer, state, runtime );
const sal_Int32 nMembers = pCompType->nMembers;
{
for( int i = 0 ; i < nMembers ; i ++ )
{
const OUString OUMemberName (pCompType->ppMemberNames[i]);
PyObject *pyMemberName = PyString_FromString(::rtl::OUStringToOString( OUMemberName, RTL_TEXTENCODING_UTF8 ).getStr());
if ( PyObject *element = PyDict_GetItem(kwinitializer, pyMemberName ) )
{
state.setInitialised(OUMemberName);
state.setUsed(pyMemberName);
Any a = runtime.pyObject2Any( element, ACCEPT_UNO_ANY );
inv->setValue( OUMemberName, a );
}
}
}
{
const int remainingPosInitialisers = PyTuple_Size(initializer) - state.getCntConsumed();
for( int i = 0 ; i < remainingPosInitialisers && i < nMembers ; i ++ )
{
const int tupleIndex = state.getCntConsumed();
const OUString pMemberName (pCompType->ppMemberNames[i]);
state.setInitialised(pMemberName, tupleIndex);
PyObject *element = PyTuple_GetItem( initializer, tupleIndex );
Any a = runtime.pyObject2Any( element, ACCEPT_UNO_ANY );
inv->setValue( pMemberName, a );
}
}
for ( int i = 0; i < nMembers ; ++i)
{
const OUString memberName (pCompType->ppMemberNames[i]);
if ( ! state.isInitialised( memberName ) )
{
OUStringBuffer buf;
buf.appendAscii( "pyuno._createUnoStructHelper: member '");
buf.append(memberName);
buf.appendAscii( "' of struct type '");
buf.append(pCompType->aBase.pTypeName);
buf.appendAscii( "' not given a value.");
throw RuntimeException(buf.makeStringAndClear(), Reference< XInterface > ());
}
}
}
OUString getLibDir()
{
static OUString *pLibDir;
if( !pLibDir )
{
osl::MutexGuard guard( osl::Mutex::getGlobalMutex() );
if( ! pLibDir )
{
static OUString libDir;
// workarounds the $(ORIGIN) until it is available
if( Module::getUrlFromAddress(
reinterpret_cast< oslGenericFunction >(getLibDir), libDir ) )
{
libDir = OUString( libDir.getStr(), libDir.lastIndexOf('/' ) );
OUString name ( RTL_CONSTASCII_USTRINGPARAM( "PYUNOLIBDIR" ) );
rtl_bootstrap_set( name.pData, libDir.pData );
}
pLibDir = &libDir;
}
}
return *pLibDir;
}
void raisePySystemException( const char * exceptionType, const OUString & message )
{
OStringBuffer buf;
buf.append( "Error during bootstrapping uno (");
buf.append( exceptionType );
buf.append( "):" );
buf.append( OUStringToOString( message, osl_getThreadTextEncoding() ) );
PyErr_SetString( PyExc_SystemError, buf.makeStringAndClear().getStr() );
}
extern "C" {
static PyObject* getComponentContext (PyObject*, PyObject*)
{
PyRef ret;
try
{
Reference<XComponentContext> ctx;
// getLibDir() must be called in order to set bootstrap variables correctly !
OUString path( getLibDir());
if( Runtime::isInitialized() )
{
Runtime runtime;
ctx = runtime.getImpl()->cargo->xContext;
}
else
{
OUString iniFile;
if( path.isEmpty() )
{
PyErr_SetString(
PyExc_RuntimeError, "osl_getUrlFromAddress fails, that's why I cannot find ini "
"file for bootstrapping python uno bridge\n" );
return NULL;
}
OUStringBuffer iniFileName;
iniFileName.append( path );
iniFileName.appendAscii( "/" );
iniFileName.appendAscii( SAL_CONFIGFILE( "pyuno" ) );
iniFile = iniFileName.makeStringAndClear();
osl::DirectoryItem item;
if( osl::DirectoryItem::get( iniFile, item ) == item.E_None )
{
// in case pyuno.ini exists, use this file for bootstrapping
PyThreadDetach antiguard;
ctx = cppu::defaultBootstrap_InitialComponentContext (iniFile);
}
else
{
// defaulting to the standard bootstrapping
PyThreadDetach antiguard;
ctx = cppu::defaultBootstrap_InitialComponentContext ();
}
}
if( ! Runtime::isInitialized() )
{
Runtime::initialize( ctx );
}
Runtime runtime;
ret = runtime.any2PyObject( makeAny( ctx ) );
}
2011-12-21 21:57:16 +09:00
catch (const com::sun::star::registry::InvalidRegistryException &e)
{
// can't use raisePyExceptionWithAny() here, because the function
// does any conversions, which will not work with a
// wrongly bootstrapped pyuno!
raisePySystemException( "InvalidRegistryException", e.Message );
}
2011-12-21 21:57:16 +09:00
catch(const com::sun::star::lang::IllegalArgumentException & e)
{
raisePySystemException( "IllegalArgumentException", e.Message );
}
2011-12-21 21:57:16 +09:00
catch(const com::sun::star::script::CannotConvertException & e)
{
raisePySystemException( "CannotConvertException", e.Message );
}
2011-12-21 21:57:16 +09:00
catch (const com::sun::star::uno::RuntimeException & e)
{
raisePySystemException( "RuntimeException", e.Message );
}
2011-12-21 21:57:16 +09:00
catch (const com::sun::star::uno::Exception & e)
{
raisePySystemException( "uno::Exception", e.Message );
}
return ret.getAcquired();
}
PyObject * extractOneStringArg( PyObject *args, char const *funcName )
{
if( !PyTuple_Check( args ) || PyTuple_Size( args) != 1 )
{
OStringBuffer buf;
buf.append( funcName ).append( ": expecting one string argument" );
PyErr_SetString( PyExc_RuntimeError, buf.getStr() );
return NULL;
}
PyObject *obj = PyTuple_GetItem( args, 0 );
2011-05-07 20:35:03 +01:00
if(!PyString_Check(obj) && !PyUnicode_Check(obj))
{
OStringBuffer buf;
buf.append( funcName ).append( ": expecting one string argument" );
PyErr_SetString( PyExc_TypeError, buf.getStr());
return NULL;
}
return obj;
}
static PyObject *createUnoStructHelper(PyObject *, PyObject* args, PyObject* keywordArgs)
{
Any IdlStruct;
PyRef ret;
try
{
Runtime runtime;
if( PyTuple_Size( args ) == 2 )
{
2011-05-07 20:35:03 +01:00
PyObject *structName = PyTuple_GetItem(args, 0);
PyObject *initializer = PyTuple_GetItem(args, 1);
2011-05-07 20:35:03 +01:00
// Perhaps in Python 3, only PyUnicode_Check returns true and
// in Python 2, only PyString_Check returns true.
if(PyString_Check(structName) || PyUnicode_Check(structName))
{
if( PyTuple_Check( initializer ) && PyDict_Check ( keywordArgs ) )
{
OUString typeName( OUString::createFromAscii(PyString_AsString(structName)));
RuntimeCargo *c = runtime.getImpl()->cargo;
Reference<XIdlClass> idl_class ( c->xCoreReflection->forName (typeName),UNO_QUERY);
if (idl_class.is ())
{
idl_class->createObject (IdlStruct);
PyUNO *me = (PyUNO*)PyUNO_new_UNCHECKED( IdlStruct, c->xInvocation );
PyRef returnCandidate( (PyObject*)me, SAL_NO_ACQUIRE );
TypeDescription desc( typeName );
OSL_ASSERT( desc.is() ); // could already instantiate an XInvocation2 !
typelib_CompoundTypeDescription *pCompType =
( typelib_CompoundTypeDescription * ) desc.get();
fillStructState state;
if ( PyTuple_Size( initializer ) > 0 || PyDict_Size( keywordArgs ) > 0 )
fillStruct( me->members->xInvocation, pCompType, initializer, keywordArgs, state, runtime );
if( state.getCntConsumed() != PyTuple_Size(initializer) )
{
OUStringBuffer buf;
buf.appendAscii( "pyuno._createUnoStructHelper: too many ");
buf.appendAscii( "elements in the initializer list, expected " );
buf.append( state.getCntConsumed() );
buf.appendAscii( ", got " );
buf.append( (sal_Int32) PyTuple_Size(initializer) );
throw RuntimeException( buf.makeStringAndClear(), Reference< XInterface > ());
}
ret = PyRef( PyTuple_Pack(2, returnCandidate.get(), state.getUsed()), SAL_NO_ACQUIRE);
}
else
{
OStringBuffer buf;
buf.append( "UNO struct " );
buf.append( PyString_AsString(structName) );
buf.append( " is unkown" );
PyErr_SetString (PyExc_RuntimeError, buf.getStr());
}
}
else
{
PyErr_SetString(
PyExc_RuntimeError,
"pyuno._createUnoStructHelper: 2nd argument (initializer sequence) is no tuple" );
}
}
else
{
PyErr_SetString (PyExc_AttributeError, "createUnoStruct: first argument wasn't a string");
}
}
else
{
PyErr_SetString (PyExc_AttributeError, "pyuno._createUnoStructHelper: expects exactly two non-keyword arguments:\n\tStructure Name\n\tinitialiser tuple; may be the empty tuple");
}
}
2011-12-21 21:57:16 +09:00
catch( const com::sun::star::uno::RuntimeException & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
2011-12-21 21:57:16 +09:00
catch( const com::sun::star::script::CannotConvertException & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
2011-12-21 21:57:16 +09:00
catch( const com::sun::star::uno::Exception & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
return ret.getAcquired();
}
static PyObject *getTypeByName( PyObject *, PyObject *args )
{
PyObject * ret = NULL;
try
{
char *name;
if (PyArg_ParseTuple (args, "s", &name))
{
OUString typeName ( OUString::createFromAscii( name ) );
TypeDescription typeDesc( typeName );
if( typeDesc.is() )
{
Runtime runtime;
ret = PyUNO_Type_new(
name, (com::sun::star::uno::TypeClass)typeDesc.get()->eTypeClass, runtime );
}
else
{
OStringBuffer buf;
buf.append( "Type " ).append(name).append( " is unknown" );
PyErr_SetString( PyExc_RuntimeError, buf.getStr() );
}
}
}
2011-12-21 21:57:16 +09:00
catch ( const RuntimeException & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
return ret;
}
static PyObject *getConstantByName( PyObject *, PyObject *args )
{
PyObject *ret = 0;
try
{
char *name;
if (PyArg_ParseTuple (args, "s", &name))
{
OUString typeName ( OUString::createFromAscii( name ) );
Runtime runtime;
Any a = runtime.getImpl()->cargo->xTdMgr->getByHierarchicalName(typeName);
if( a.getValueType().getTypeClass() ==
com::sun::star::uno::TypeClass_INTERFACE )
{
// a idl constant cannot be an instance of an uno-object, thus
// this cannot be a constant
OUStringBuffer buf;
buf.appendAscii( "pyuno.getConstantByName: " ).append( typeName );
buf.appendAscii( "is not a constant" );
throw RuntimeException(buf.makeStringAndClear(), Reference< XInterface > () );
}
PyRef constant = runtime.any2PyObject( a );
ret = constant.getAcquired();
}
}
2011-12-21 21:57:16 +09:00
catch( const NoSuchElementException & e )
{
// to the python programmer, this is a runtime exception,
// do not support tweakings with the type system
RuntimeException runExc( e.Message, Reference< XInterface > () );
raisePyExceptionWithAny( makeAny( runExc ) );
}
2011-12-21 21:57:16 +09:00
catch(const com::sun::star::script::CannotConvertException & e)
{
raisePyExceptionWithAny( makeAny( e ) );
}
2011-12-21 21:57:16 +09:00
catch(const com::sun::star::lang::IllegalArgumentException & e)
{
raisePyExceptionWithAny( makeAny( e ) );
}
2011-12-21 21:57:16 +09:00
catch( const RuntimeException & e )
{
raisePyExceptionWithAny( makeAny(e) );
}
return ret;
}
static PyObject *checkType( PyObject *, PyObject *args )
{
if( !PyTuple_Check( args ) || PyTuple_Size( args) != 1 )
{
OStringBuffer buf;
buf.append( "pyuno.checkType : expecting one uno.Type argument" );
PyErr_SetString( PyExc_RuntimeError, buf.getStr() );
return NULL;
}
PyObject *obj = PyTuple_GetItem( args, 0 );
try
{
PyType2Type( obj );
}
2011-12-21 21:57:16 +09:00
catch(const RuntimeException & e)
{
raisePyExceptionWithAny( makeAny( e ) );
return NULL;
}
Py_INCREF( Py_None );
return Py_None;
}
static PyObject *checkEnum( PyObject *, PyObject *args )
{
if( !PyTuple_Check( args ) || PyTuple_Size( args) != 1 )
{
OStringBuffer buf;
buf.append( "pyuno.checkType : expecting one uno.Type argument" );
PyErr_SetString( PyExc_RuntimeError, buf.getStr() );
return NULL;
}
PyObject *obj = PyTuple_GetItem( args, 0 );
try
{
PyEnum2Enum( obj );
}
2011-12-21 21:57:16 +09:00
catch(const RuntimeException & e)
{
raisePyExceptionWithAny( makeAny( e) );
return NULL;
}
Py_INCREF( Py_None );
return Py_None;
}
static PyObject *getClass( PyObject *, PyObject *args )
{
PyObject *obj = extractOneStringArg( args, "pyuno.getClass");
if( ! obj )
return NULL;
try
{
Runtime runtime;
PyRef ret = getClass(
OUString( PyString_AsString( obj), strlen(PyString_AsString(obj)),RTL_TEXTENCODING_ASCII_US),
runtime );
Py_XINCREF( ret.get() );
return ret.get();
}
2011-12-21 21:57:16 +09:00
catch(const RuntimeException & e)
{
// NOOPT !!!
// gcc 3.2.3 crashes here in the regcomp test scenario
// only since migration to python 2.3.4 ???? strange thing
// optimization switched off for this module !
raisePyExceptionWithAny( makeAny(e) );
}
return NULL;
}
static PyObject *isInterface( PyObject *, PyObject *args )
{
if( PyTuple_Check( args ) && PyTuple_Size( args ) == 1 )
{
PyObject *obj = PyTuple_GetItem( args, 0 );
Runtime r;
2011-05-07 20:35:03 +01:00
return PyLong_FromLong( isInterfaceClass( r, obj ) );
}
2011-05-07 20:35:03 +01:00
return PyLong_FromLong( 0 );
}
static PyObject * generateUuid( PyObject *, PyObject * )
{
Sequence< sal_Int8 > seq( 16 );
rtl_createUuid( (sal_uInt8*)seq.getArray() , 0 , sal_False );
PyRef ret;
try
{
Runtime runtime;
ret = runtime.any2PyObject( makeAny( seq ) );
}
2011-12-21 21:57:16 +09:00
catch( const RuntimeException & e )
{
raisePyExceptionWithAny( makeAny(e) );
}
return ret.getAcquired();
}
static PyObject *systemPathToFileUrl( PyObject *, PyObject * args )
{
PyObject *obj = extractOneStringArg( args, "pyuno.systemPathToFileUrl" );
if( ! obj )
return NULL;
OUString sysPath = pyString2ustring( obj );
OUString url;
osl::FileBase::RC e = osl::FileBase::getFileURLFromSystemPath( sysPath, url );
if( e != osl::FileBase::E_None )
{
OUStringBuffer buf;
buf.appendAscii( "Couldn't convert " );
buf.append( sysPath );
buf.appendAscii( " to a file url for reason (" );
buf.append( (sal_Int32) e );
buf.appendAscii( ")" );
raisePyExceptionWithAny(
makeAny( RuntimeException( buf.makeStringAndClear(), Reference< XInterface > () )));
return NULL;
}
return ustring2PyUnicode( url ).getAcquired();
}
static PyObject * fileUrlToSystemPath( PyObject *, PyObject * args )
{
PyObject *obj = extractOneStringArg( args, "pyuno.fileUrlToSystemPath" );
if( ! obj )
return NULL;
OUString url = pyString2ustring( obj );
OUString sysPath;
osl::FileBase::RC e = osl::FileBase::getSystemPathFromFileURL( url, sysPath );
if( e != osl::FileBase::E_None )
{
OUStringBuffer buf;
buf.appendAscii( "Couldn't convert file url " );
buf.append( sysPath );
buf.appendAscii( " to a system path for reason (" );
buf.append( (sal_Int32) e );
buf.appendAscii( ")" );
raisePyExceptionWithAny(
makeAny( RuntimeException( buf.makeStringAndClear(), Reference< XInterface > () )));
return NULL;
}
return ustring2PyUnicode( sysPath ).getAcquired();
}
static PyObject * absolutize( PyObject *, PyObject * args )
{
if( PyTuple_Check( args ) && PyTuple_Size( args ) == 2 )
{
OUString ouPath = pyString2ustring( PyTuple_GetItem( args , 0 ) );
OUString ouRel = pyString2ustring( PyTuple_GetItem( args, 1 ) );
OUString ret;
oslFileError e = osl_getAbsoluteFileURL( ouPath.pData, ouRel.pData, &(ret.pData) );
if( e != osl_File_E_None )
{
OUStringBuffer buf;
buf.appendAscii( "Couldn't absolutize " );
buf.append( ouRel );
buf.appendAscii( " using root " );
buf.append( ouPath );
buf.appendAscii( " for reason (" );
buf.append( (sal_Int32) e );
buf.appendAscii( ")" );
PyErr_SetString(
PyExc_OSError,
OUStringToOString(buf.makeStringAndClear(),osl_getThreadTextEncoding()).getStr());
return 0;
}
return ustring2PyUnicode( ret ).getAcquired();
}
return 0;
}
2011-05-07 20:35:03 +01:00
static PyObject * invoke(PyObject *, PyObject *args)
2003-05-24 22:32:14 +00:00
{
PyObject *ret = 0;
2011-05-07 20:35:03 +01:00
if(PyTuple_Check(args) && PyTuple_Size(args) == 3)
2003-05-24 22:32:14 +00:00
{
2011-05-07 20:35:03 +01:00
PyObject *object = PyTuple_GetItem(args, 0);
PyObject *item1 = PyTuple_GetItem(args, 1);
if(PyString_Check(item1) || PyUnicode_Check(item1))
2003-05-24 22:32:14 +00:00
{
2011-05-07 20:35:03 +01:00
const char *name = PyString_AsString(item1);
PyObject *item2 = PyTuple_GetItem(args, 2);
if(PyTuple_Check(item2))
2003-05-24 22:32:14 +00:00
{
2011-05-07 20:35:03 +01:00
ret = PyUNO_invoke(object, name, item2);
2003-05-24 22:32:14 +00:00
}
else
{
OStringBuffer buf;
2011-05-07 20:35:03 +01:00
buf.append("uno.invoke expects a tuple as 3rd argument, got ");
buf.append(PyString_AsString(PyObject_Str(item2)));
PyErr_SetString(
PyExc_RuntimeError, buf.makeStringAndClear().getStr());
2003-05-24 22:32:14 +00:00
}
}
else
{
OStringBuffer buf;
2011-05-07 20:35:03 +01:00
buf.append("uno.invoke expected a string as 2nd argument, got ");
buf.append(PyString_AsString(PyObject_Str(item1)));
PyErr_SetString(
PyExc_RuntimeError, buf.makeStringAndClear().getStr());
2003-05-24 22:32:14 +00:00
}
}
else
{
OStringBuffer buf;
2011-05-07 20:35:03 +01:00
buf.append("uno.invoke expects object, name, (arg1, arg2, ... )\n");
PyErr_SetString(PyExc_RuntimeError, buf.makeStringAndClear().getStr());
2003-05-24 22:32:14 +00:00
}
return ret;
}
static PyObject *getCurrentContext( PyObject *, PyObject * )
{
PyRef ret;
try
{
Runtime runtime;
ret = runtime.any2PyObject(
makeAny( com::sun::star::uno::getCurrentContext() ) );
}
2011-12-21 21:57:16 +09:00
catch( const com::sun::star::uno::Exception & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
return ret.getAcquired();
}
static PyObject *setCurrentContext( PyObject *, PyObject * args )
{
PyRef ret;
try
{
if( PyTuple_Check( args ) && PyTuple_Size( args ) == 1 )
{
Runtime runtime;
Any a = runtime.pyObject2Any( PyTuple_GetItem( args, 0 ) );
Reference< com::sun::star::uno::XCurrentContext > context;
CWS-TOOLING: integrate CWS cmcfixes51 2008-12-08 10:12:55 +0100 cmc r264975 : #i96203# protect with ifdefs to avoid unused symbol on mac 2008-12-05 12:23:47 +0100 cmc r264898 : CWS-TOOLING: rebase CWS cmcfixes51 to trunk@264807 (milestone: DEV300:m37) 2008-12-01 14:45:17 +0100 cmc r264606 : #i76655# ehlos apparently required 2008-11-28 17:49:30 +0100 cmc r264567 : #i96655# remove newly unused method 2008-11-28 10:41:28 +0100 cmc r264531 : #i96647# better ppc-bridges flushCode impl 2008-11-27 12:58:40 +0100 cmc r264478 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 12:32:49 +0100 cmc r264476 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 12:26:02 +0100 cmc r264475 : #i96655# redundant old table export helpers 2008-11-27 11:49:06 +0100 cmc r264473 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 11:38:35 +0100 cmc r264471 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 11:14:21 +0100 cmc r264467 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 11:06:22 +0100 cmc r264464 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 10:58:18 +0100 cmc r264462 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 10:41:44 +0100 cmc r264461 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 10:19:24 +0100 cmc r264460 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 10:13:39 +0100 cmc r264459 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 10:06:14 +0100 cmc r264458 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:59:54 +0100 cmc r264457 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:52:51 +0100 cmc r264456 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:48:26 +0100 cmc r264454 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:40:20 +0100 cmc r264452 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:35:26 +0100 cmc r264451 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:31:00 +0100 cmc r264450 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 09:24:08 +0100 cmc r264449 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 00:26:15 +0100 cmc r264443 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 00:21:01 +0100 cmc r264442 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-27 00:09:40 +0100 cmc r264441 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 23:51:56 +0100 cmc r264440 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 23:49:09 +0100 cmc r264439 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 18:09:54 +0100 cmc r264432 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 18:07:40 +0100 cmc r264431 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 17:28:02 +0100 cmc r264429 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 17:27:39 +0100 cmc r264428 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 17:18:36 +0100 cmc r264426 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 16:22:16 +0100 cmc r264415 : #i96624# make implicit braces and brackets explicit to avoid warnings 2008-11-26 16:00:23 +0100 cmc r264409 : #i90426# remove warnings from svtools 2008-11-26 15:59:17 +0100 cmc r264408 : #i90426# remove warnings 2008-11-26 15:47:32 +0100 cmc r264404 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 14:46:57 +0100 cmc r264394 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 14:19:50 +0100 cmc r264387 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 14:15:26 +0100 cmc r264386 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 14:11:26 +0100 cmc r264384 : #i96084# confirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 13:44:23 +0100 cmc r264380 : #i96084# comfirm existing logic with explicit brackets to remove new gcc warnings 2008-11-26 13:12:24 +0100 cmc r264372 : #i96604# silence new warnings 2008-11-26 12:35:02 +0100 cmc r264369 : #i96203# make qstarter work in 3-layer land 2008-11-26 12:33:04 +0100 cmc r264368 : #i96170# ensure gtypes are up and running
2008-12-11 07:05:03 +00:00
if( (a.hasValue() && (a >>= context)) || ! a.hasValue() )
{
ret = com::sun::star::uno::setCurrentContext( context ) ? Py_True : Py_False;
}
else
{
OStringBuffer buf;
buf.append( "uno.setCurrentContext expects an XComponentContext implementation, got " );
buf.append( PyString_AsString( PyObject_Str( PyTuple_GetItem( args, 0) ) ) );
PyErr_SetString(
PyExc_RuntimeError, buf.makeStringAndClear().getStr() );
}
}
else
{
OStringBuffer buf;
buf.append( "uno.setCurrentContext expects exactly one argument (the current Context)\n" );
PyErr_SetString(
PyExc_RuntimeError, buf.makeStringAndClear().getStr() );
}
}
2011-12-21 21:57:16 +09:00
catch( const com::sun::star::uno::Exception & e )
{
raisePyExceptionWithAny( makeAny( e ) );
}
return ret.getAcquired();
}
}
struct PyMethodDef PyUNOModule_methods [] =
{
{"getComponentContext", getComponentContext, METH_VARARGS, NULL},
{"_createUnoStructHelper", reinterpret_cast<PyCFunction>(createUnoStructHelper), METH_VARARGS | METH_KEYWORDS, NULL},
{"getTypeByName", getTypeByName, METH_VARARGS, NULL},
{"getConstantByName", getConstantByName, METH_VARARGS, NULL},
{"getClass", getClass, METH_VARARGS, NULL},
{"checkEnum", checkEnum, METH_VARARGS, NULL},
{"checkType", checkType, METH_VARARGS, NULL},
{"generateUuid", generateUuid, METH_VARARGS, NULL},
{"systemPathToFileUrl", systemPathToFileUrl, METH_VARARGS, NULL},
{"fileUrlToSystemPath", fileUrlToSystemPath, METH_VARARGS, NULL},
{"absolutize", absolutize, METH_VARARGS | METH_KEYWORDS, NULL},
{"isInterface", isInterface, METH_VARARGS, NULL},
{"invoke", invoke, METH_VARARGS | METH_KEYWORDS, NULL},
{"setCurrentContext", setCurrentContext, METH_VARARGS, NULL},
{"getCurrentContext", getCurrentContext, METH_VARARGS, NULL},
{NULL, NULL, 0, NULL}
};
}
2011-05-07 20:35:03 +01:00
extern "C" PY_DLLEXPORT
#if PY_MAJOR_VERSION >= 3
PyObject* PyInit_pyuno()
{
// noop when called already, otherwise needed to allow multiple threads
2011-05-07 20:35:03 +01:00
PyEval_InitThreads();
static struct PyModuleDef moduledef =
{
PyModuleDef_HEAD_INIT,
"pyuno", // module name
0, // module documentation
-1, // module keeps state in global variables,
PyUNOModule_methods, // modules methods
0, // m_reload (must be 0)
0, // m_traverse
0, // m_clear
0, // m_free
};
return PyModule_Create(&moduledef);
}
#else
void initpyuno()
{
PyEval_InitThreads();
Py_InitModule ("pyuno", PyUNOModule_methods);
}
2011-05-07 20:35:03 +01:00
#endif /* PY_MAJOR_VERSION >= 3 */
/* vim:set shiftwidth=4 softtabstop=4 expandtab: */